An evaluation of force term in the lattice Boltzmann method for mixed convection with large Richardson numbers

被引:1
作者
Naghavi, Sayed Mahdi [1 ]
Sheikhzadeh, Ghanbar Ali [1 ]
机构
[1] Univ Kashan, Mech Engn Dept, Kashan, Iran
关键词
Mixed convection; Natural convection; Boussinesq approximation; Lattice Boltzmann method; Body force; COPPER-WATER NANOFLUID; LID-DRIVEN CAVITY; HEAT-TRANSFER; NATURAL-CONVECTION; SHALLOW CAVITY; SIMULATION; FLOW; FLUID; DEVELOP; AIR;
D O I
10.1108/HFF-04-2021-0268
中图分类号
O414.1 [热力学];
学科分类号
摘要
Purpose The purpose of this study is the identification of the best method to apply the body force in the lattice Boltzmann method (LBM). In the simulation of mixed convection, especially for large Richardson number flows in a square cavity. Design/methodology/approach First, three methods for applying the body force were compared to each other in the LBM. Then, an LBM-based code was written in the FORTRAN language using these three methods. Next, that code was used to simulate natural/mixed convection in a two-dimensional cavity to evaluate the methods for applying the body force. Finally, the optimum way for applying the body force was used for the simulation of free convection heat transfer in a concentric annulus with Rayleigh number in a range of 1,000 to 50,000, and mixed convection heat transfer in a concentric annulus with Rayleigh number in a range of 10,000 to 50,000 and Reynolds number in a range of 100 to 400. Findings Mixed convection heat transfer was simulated in a two-dimensional cavity with Richardson number in a range of 0.0001 to 100. The results which were obtained in low Richardson number flows have shown good adaptation to the available data. However, the results of large Richardson number flows, for example, Ri = 100, have shown a significant difference to the available data. Investigations revealed that this difference was due to the method of applying the body force. Therefore, the choice of the best way to apply the body force was investigated. Finally, for the large Richardson number flows, the best method to apply the body force has been identified among the several techniques. Originality/value To the authors' knowledge, the effects of methods for applying the body force were not investigated in the cavities mixed convection, even though there are numerous investigations conducted on mixed convection with the LBM. In this study, the effects of techniques to apply the body force were investigated in large Richardson number flows. Finally, the best method to apply the body force is distinguished between several techniques for the large Richardson number mixed convection flows.
引用
收藏
页码:2260 / 2281
页数:22
相关论文
共 38 条
[1]   LBM simulation of free convection in a nanofluid filled incinerator containing a hot block [J].
Abbassi, Mohamed Ammar ;
Safaei, Mohammad Reza ;
Djebali, Ridha ;
Guedri, Kamel ;
Zeghmati, Belkacem ;
Alrashed, Abdullah A. A. A. .
INTERNATIONAL JOURNAL OF MECHANICAL SCIENCES, 2018, 144 :172-185
[2]   Effect of horizontal and vertical elliptic baffles inside an enclosure on the mixed convection of a MWCNTs-water nanofluid and its entropy generation [J].
Aghaei, Alireza ;
Sheikhzadeh, Ghanbar Ali ;
Goodarzi, Marjan ;
Hasani, Hossein ;
Damirchi, Hadi ;
Afrand, Masoud .
EUROPEAN PHYSICAL JOURNAL PLUS, 2018, 133 (11)
[3]   Numerical study of mixed convection in a horizontal no parallel-plates channel with an unheated moving plate [J].
Andreozzi, Assunta .
INTERNATIONAL JOURNAL OF NUMERICAL METHODS FOR HEAT & FLUID FLOW, 2018, 28 (03) :547-570
[4]   A Truly Second-Order and Unconditionally Stable Thermal Lattice Boltzmann Method [J].
Chen, Zhen ;
Shu, Chang ;
Tan, Danielle S. .
APPLIED SCIENCES-BASEL, 2017, 7 (03)
[5]   Numerical Study of Entropy Generation due to Coupled Laminar and Turbulent Mixed Convection and Thermal Radiation in an Enclosure Filled with a Semitransparent Medium [J].
Goodarzi, M. ;
Safaei, M. R. ;
Oztop, Hakan F. ;
Karimipour, A. ;
Sadeghinezhad, E. ;
Dahari, M. ;
Kazi, S. N. ;
Jomhari, N. .
SCIENTIFIC WORLD JOURNAL, 2014,
[6]   Comparison of the Finite Volume and Lattice Boltzmann Methods for Solving Natural Convection Heat Transfer Problems inside Cavities and Enclosures [J].
Goodarzi, M. ;
Safaei, M. R. ;
Karimipour, A. ;
Hooman, K. ;
Dahari, M. ;
Kazi, S. N. ;
Sadeghinezhad, E. .
ABSTRACT AND APPLIED ANALYSIS, 2014,
[7]   Investigation of nanofluid mixed convection in a shallow cavity using a two-phase mixture model [J].
Goodarzi, M. ;
Safaei, M. R. ;
Vafai, K. ;
Ahmadi, G. ;
Dahari, M. ;
Kazi, S. N. ;
Jomhari, N. .
INTERNATIONAL JOURNAL OF THERMAL SCIENCES, 2014, 75 :204-220
[8]   Develop the nano scale method of lattice Boltzmann to predict the fluid flow and heat transfer of air in the inclined lid driven cavity with a large heat source inside, Two case studies: Pure natural convection & mixed convection [J].
Goodarzi, Marjan ;
D'Orazio, Annunziata ;
Keshavarzi, Ahmad ;
Mousavi, Sayedali ;
Karimipour, Arash .
PHYSICA A-STATISTICAL MECHANICS AND ITS APPLICATIONS, 2018, 509 :210-233
[9]   Discrete lattice effects on the forcing term in the lattice Boltzmann method [J].
Guo, Zhaoli ;
Zheng, Chuguang ;
Shi, Baochang .
Physical Review E - Statistical, Nonlinear, and Soft Matter Physics, 2002, 65 (04) :1-046308
[10]   A novel thermal model for the lattice Boltzmann method in incompressible limit [J].
He, X ;
Chen, S ;
Doolen, GD .
JOURNAL OF COMPUTATIONAL PHYSICS, 1998, 146 (01) :282-300